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《中國(guó)給水排水》2024年水環(huán)境保護(hù)與可持續(xù)發(fā)展大會(huì)暨 上海水業(yè)嘉年華
 
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陳光浩-- 現(xiàn)任香港科技大學(xué)土木工程系終生教授、環(huán)境工程專業(yè)主任、環(huán)境工程研究生課程主任,浙江大學(xué)、中山大學(xué)客座教授,香港特區(qū)政府污水處理工程技術(shù)顧問

放大字體  縮小字體 發(fā)布日期:2016-02-15  瀏覽次數(shù):1222
核心提示:陳光浩-- 現(xiàn)任香港科技大學(xué)土木工程系終生教授、環(huán)境工程專業(yè)主任、環(huán)境工程研究生課程主任,浙江大學(xué)、中山大學(xué)客座教授,香港特區(qū)政府污水處理工程技術(shù)顧問
中國(guó)給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級(jí)研討會(huì)(第十五屆)邀請(qǐng)函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))

中國(guó)給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級(jí)研討會(huì)(第十五屆)邀請(qǐng)函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))
 

陳光浩 [教授]

基本情況
       陳光浩,浙江人,國(guó)家千人計(jì)劃教授,中山大學(xué)環(huán)境科學(xué)與工程學(xué)院環(huán)境工程系教授、博士生導(dǎo)師。


 

       陳光浩教授長(zhǎng)期從事城市污水處理研究,多年來(lái)在相關(guān)頂級(jí)學(xué)術(shù)期刊發(fā)表學(xué)術(shù)論文100多篇(其中26篇發(fā)表在《Water Research》等環(huán)境學(xué)科一流刊物上),獲美國(guó)、英國(guó)、新加坡發(fā)明專利共5項(xiàng),獲國(guó)家自然科學(xué)基金委、香港創(chuàng)新技術(shù)委員會(huì)、香港研資局、香港渠務(wù)署、香港機(jī)場(chǎng)管理局等機(jī)構(gòu)研究項(xiàng)目近40余項(xiàng),并取得了國(guó)際領(lǐng)先的豐碩學(xué)術(shù)成果,在該領(lǐng)域有較高的國(guó)際地位和影響。目前,陳教授還擔(dān)任《Water Research》副主編及國(guó)家自然科學(xué)基金-香港RGC聯(lián)合基金項(xiàng)目會(huì)評(píng)專家等學(xué)術(shù)職務(wù)。

       陳光浩教授的城市污水廠剩余污泥減量新OSA工藝、含鹽生活污水處理SANI工藝、低能耗-無(wú)堵塞膜生物反應(yīng)器等均為原創(chuàng)性研究成果,不但帶來(lái)了城市污水處理的基礎(chǔ)理論和技術(shù)創(chuàng)新,而且具有非常廣泛的應(yīng)用前景。

聯(lián)系方式
·廣州市海珠區(qū)新港西路135號(hào)中山大學(xué)環(huán)境工程系,510275
·電話:+86-020-84112365 ;+86-020-39333209;
·傳真:+86-020-84110692 ;+86-020-39333209。

教育經(jīng)歷
·1978年-1982年 畢業(yè)于浙江大學(xué)環(huán)境工程專業(yè)獲得學(xué)士學(xué)位;
·1983年-1986年 畢業(yè)于日本京都大學(xué)環(huán)境與衛(wèi)生工程學(xué)獲得博士學(xué)位。

工作經(jīng)歷
·1990-1992日本Urshin株式會(huì)社環(huán)境工程顧問;
·1992-1994新加坡國(guó)立大學(xué)土木工程系(NUS)研究科學(xué)家;
·1995-2003香港科技大學(xué)土木工程系助理教授;
·2003-2009香港科技大學(xué)土木工程系副教授;
·2006-2007香港科技大學(xué)環(huán)境工程系主任;
·2009至今 香港科技大學(xué)土木工程系教授(終身教席);
·2007至今 中山大學(xué)環(huán)境工程系教授。

發(fā)明專利
·2004年 專利“Apparatus for treating wastewater”;
·2009年 專利“污水處理系統(tǒng)及其處理方法”;
·2009年 專利“含硫酸根廢,污水處理系統(tǒng)及其處理方法”;
·2010年 專利“一種AB法城市污水處理工藝的污泥減量化”;
·2010年 專利“一種強(qiáng)化耗氧-沉淀-缺氧工藝污泥減量”。

 

陳光浩

 

(香港科技大學(xué)終身教授)




陳光浩(Guang-Hao CHEN)博士,現(xiàn)任香港科技大學(xué)土木工程系終生教授、環(huán)境工程專業(yè)主任、環(huán)境工程研究生課程主任,浙江大學(xué)、中山大學(xué)客座教授,香港特區(qū)政府污水處理工程技術(shù)顧問

 
中文名
陳光浩
職    業(yè)
終生教授
主要成就
《Water Science & Technology》專輯主編
代表作品
《Water Science & Technology: Water Supply》






陳光浩(Guang-Hao CHEN)博士,現(xiàn)任香港科技大學(xué)土木工程系終生教授、環(huán)境工程專業(yè)主任、環(huán)境工程研究生課程主任,浙江大學(xué)、中山大學(xué)客座教授,香港特區(qū)政府污水處理工程技術(shù)顧問,國(guó)際水協(xié)(IWA)污泥處理專家委員會(huì)課題組成員,國(guó)際水協(xié)水力學(xué)會(huì)(IAHR)下水道聯(lián)合專家委員會(huì)理事,《Water Research》副主編,《IWA Journal:AQUA》亞太區(qū)編委,《Water Science & Technology》專輯主編,《Water Science & Technology: Water Supply》專輯主編,《International Journal of Pollution and Environment》特邀主編,清華大學(xué)環(huán)境科學(xué)與技術(shù)學(xué)刊特邀編委。多年來(lái)出版學(xué)術(shù)專著/論文集12冊(cè),發(fā)表學(xué)術(shù)論文125篇,包括SCI論文51篇(其中26篇發(fā)表在《Water Research》等環(huán)境學(xué)科一流刊物上),EI論文5篇,獲美國(guó)、英國(guó)、新加坡發(fā)明專利共3項(xiàng),獲日本政府、三菱公司、香港研資局、香港渠務(wù)署等研究項(xiàng)目近40項(xiàng)。
E-mail: ceghchen@ust.hk
Tel.: (852) 2358-8752
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Current Research Interests
Sustainable decentralized sewage treatment systems 可持續(xù)性非集中式城市污水處理新系統(tǒng)
Excess sludge minimized activated sludge processes 活性污泥法剩余污泥減量方法
Biofilm, denitrification and corrosion control in sewer 污水管道中污染物轉(zhuǎn)化及生物膜
Micro-pollutant degradation in membrane bio-reactor (MBR ) and low-cost MBR system development 膜生物處理
Re-use of water treatment works sludge in sewage treatment works and phosphorus adsorption on aluminium hydroxide 自來(lái)水廠污泥在城市污水處理廠之利用及磷之吸附
Courses Taught
CIVL 142 Introduction of Environmental Science and Engineering
CIVL 242 Water and Wastewater Engineering
CIVL 344 Solid Waste Management
CIVL 345 Environmental Analysis of Aqueous Systems
CIVL 346 Process Design of Environmental Engineering Facilities
CIVL 542 Biological Waste Treatment
CIVL 543 Aquatic Chemistry
CIVL 544 Process Design of Water and Wastewater Treatment Systems
CIEM 548 Wastewater Treatment and Reuse
Publication (2003~)
Book/ Book Chapter/Journal Issue
G. H. Chen, J. C. Huang, C Shang, H. H. P Fang, and Y. Watanabe (2004). Editor of the Special Issue of "Creative Water and Wastewater Treatment Technologies for Densely Populated Urban Areas". Water Science and Technology: Water Supply. Vol., 04, No. 01, 166 pages.
X. H. Guan, G. H. Chen, and C. Shang (2004). ATR-FTIR and XPS study on the structure of complexes formed between simple organic acids and aluminium hydroxide. In: Young Researchers 2004 (ed by P Lens and R Stuetz), Water and Environmental Management Series, IWA publisher, 2004.
G. H. Chen, C. Shang, and X. R. Zhang (2006). Editor of the Special Issue of "Leading-edge Strategies and Technologies for Sustainable Urban Water Management". Water Science and Technology: Water Supply. Vol., 06, No. 06, 183 pages.
G. H. Chen. Water Reuse in Asia. In: International Survey of Water Reclamation and Ruse, edited by B. Jimemez and T. Asano, IWA publisher (in press).
G. H. Chen and J. H. Qu (2007). Editor of the Special Issue of "Research and Development of Environmental Science and Technology in China, International Journal of Pollution and Environment (in preparation).
Invited Overseas Conference/Workshop Presentations/Guest Lectures
G. H. Chen (2004). Novel approaches to reduce excess sludge in activated sludge processes. Hokkaido University Centre of Excellence (COE) Lectures on Environmental Biotechnology, Sapporo, Japan, July 07, 2004.
G. H. Chen and Chii Shang (2004). Comparison of performance of MBR in treating freshwater and seawater sewage and evaluation of virus rejection. Hokkaido University COE Workshop on Membrane Bioreactor, Sapporo, Japan, July 12, 2004.
D. H. W. Leung, K. R. Sharma, and G. H. Chen (2004). Effect of detached/re-suspended solids from sewer sediment on the sewage phase bacterial activity. Keynote presentation at IWA Sponsored International Symposium on Biotechnology for Environmental Pollution Control, Beijing, China, August 14-15, 2004.
G. H. Chen (2005). Applications of MBR/MF/RO in sewage reuse/recycle. Hokkaido University COE workshop on MBR, Sapporo, Japan, June 11, 2005.
G. H. Chen (2005). Pilot studies of membrane technology for effluent reuse. International Conference on Nanotechnologies and Advanced Materials. Hong Kong, August 8-10, 2005.
G. H. Chen (2006). Modelling of biotreatment-Theory and practice. Hokkaido University COE Lectures on Environmental Biotechnology, August 03, 2006.
G. H. Chen (2006). Reuse of alum sludge in sewage treatment and phosphorus/Nom adsorption on aluminum hydroxide, Hokkaido University COE Lectures on Environmental Biotechnology, August 03, 2006.
G. H. Chen (2006). Is biofilm formation the key player in bio-fouling of MBR? 1st IMECT, Sapporo, 18 August 2006, Japan.
Journal Papers
S. Saby, M. Djafer, and G. H. Chen (2003). Effect of low ORP in anoxic sludge zone on excess sludge production in an oxic-settling-anoxic activated sludge process (OSA process). Water Research, 37(1), pp.11-20.
Y. Chen, Y. Zhang, and G. H. Chen (2003). Appropriate conditions for maximizing catalytic reduction efficiency of nitrate into nitrogen gas in groundwater. Water Research, 37(10), pp. 2489-2495.
G. H. Chen, D. H. K. Leung and J. C. Huang (2003). Biofilm in the sediment phase of a sanitary gravity sewer. Water Research, 37(11), pp.2784-2788.
G. H. Chen, M. T. Wong, S. Okabe, and Y. Watanabe (2003). Dynamic response of nitrifying activated sludge batch cultures to increased chloride concentration. Water Research, 37(13), pp.3125-3135.
G. H. Chen, K. J. An., S. Saby, E. Brois, and M. Djafer (2003). Possible cause of excess sludge reduction in an oxic-settling-anoxic activated sludge process (OSA Process). Water Research, 37(16), pp.3843-3864.
X. H. Guan, Shang C, S. M. Yu, and G. H. Chen (2004). Exploratory study on reuse of water treatment works sludge to enhance primary sewage treatment. Water Science and Technology: Water Supply, 04(1), pp.159-164.
G. H. Chen and M. T. Wong (2004). Impact of increased chloride concentration to nitrifying activated sludge process. Journal of Environmental Engineering, ASCE,130(2), pp.116-125.
Y. Chen, Y. Zhang, G. H. Chen, and K. R. Sharma (2004). Hydrogen-based catalytic ceramic membrane for removing nitrate in groundwater. Environmental Technology, 25, pp.227-234.
X. H. Guan, Q. Liu, G. H. Chen, and C. Shang (2005). Reuse of water treatment works sludge to enhance particulate pollutant removal from sewage. Water Research, 39(15), pp.3433-3440.
X. H. Guan, Q. Liu, G. H. Chen, and C. Shang (2005). Surface complexation of condensed phosphate to aluminium hydroxide: An ART-FTIR spectroscopic investigation. Journal of Colloid and Interface Science, 289(2), pp.319-327.
M. H. Wong, C. Shang and G. H. Chen (2005). Bacteriophage MS-2 Removal by Submerged Membrane Bioreactor. Water Research, 39 (17), pp.4211-4219.
D. H. W. Leung, G. H. Chen and K. R. Sharma (2005). Effect of attached/re-suspended solids from sewer sediment on sewage phase bacterial activity. Water Science and Technology, 52(3), pp.147-152.
X. H. Guan, G. H. Chen, C. Shang, and J. Zhu (2005). ATR-FTIR Investigation on the Complexation of Myo-inositol Hexaphosphate with Aluminum Hydroxide. Journal of Colloid and Interface Science, 293(2), pp. 296-302.
X. H. Guan, G. H. Chen, and C. Shang (2006). Competitive Adsorption of organic matter with phosphate on aluminum hydroxide. Journal of Colloid and Interface Science, 296(1), pp.51-58.
G. N. Lau, K. R. Sharma, G. H. Chen and M. C. M. van Loosdrecht (2006). Integration of sulfate reduction, autotrophic denitrification and nitrification to achieve low-cost excess sludge minimization for Hong Kong sewage. Water Science and Technology, 53(3), pp.227-235.
H. L. S. Tam, D. T. W. Tang, K. R. Sharma and G. H. Chen (2006). A pilot study of a membrane bio-reactor in treating fresh water sewage and saline sewage in Hong Kong (invited paper). Separation Science and Technology, 41 (7), pp.1253-1264.
S. Y. C. Lee, L. M. Wang, Y. Xue, N. Ge, X. Yang, and G. H. Chen (2006). Natural estrogens in the surface water of Shenzhen and the sewage of Hong Kong. Human and Ecological Risk Assessment, 12(2), pp.301-312
X. H. Guan, G. H. Chen, and C. Shang (2006). Combining kinetic investigation with surface spectroscopic examination to study the role of aromatic carboxyl groups in NOM adsorption by aluminum hydroxide. Journal of Colloid and Interface Science, 301, pp.419-427.
X. H. Guan, C. Shang and G. H. Chen (2006). ATR-FTIR investigation on the role of phenolic groups in the interaction of NOM with aluminum hydroxide. Chemosphere, 65, pp.2074-2081.
H. L. S. Tam, D. T. W. Tang, K R Sharma and G. H. Chen (2006). A pilot study for sewage reclamation and reuse with MBR/RO and MF/RO systems. Desalination. 202 (1-3), 106-113.
X. H. Guan, G. H. Chen, and C. Shang (2006). Role of carboxylic and phenolic groups in NOM adsorption on minerals: a review. Water Science and Technology: Water Supply. 6(6), 155-164.
G. H. Chen and S. K. Pang (2006). Development of a low-cost dynamic filter immersed in activated sludge system. Water Science and Technology: Water Supply. 6(6), pp.111-117.
An. K. J. and G. H. Chen. A COD balance analysis of an oxic-settling-anaerobic activated sludge process. Journal of Environmental Engineering, ASCE (attentively accepted).
X. H. Guan, G. H. Chen, and C. Shang. Competitive adsorption of phosphorus on aluminum hydroxide. Water Science and Technology (in press).
International Conference Papers (Referred oral presentations only)
X. H. Guan, C. Shang, and G H Chen (2003). Competitive adsorption of reactive, condensed, and organic phosphate on aluminum hydroxide. IWA-ASPAC 2003 Conference, October 13-18, 2003, The Philippines.
D. H. W Leung and G H Chen (2004). Effect of detached/re-suspended solids from sewer biofilm on the oxygen uptake of sewage phase in a sewer. IWA 1st Asian Junior Scientist Workshop on Sewer Network Processes & Urban Drainage, 7-10 February 2004, Malacca, Malaysia.
X. H. Guan, G. H. Chen, and C. Shang (2004). ATR-FTIR and XPS studies on structure of complexes formed between simple organic acids and aluminum hydroxide. The 2nd Young Researchers Conference, May 3-4 2004, Wageningen, The Netherlands.
H M Wong, C Shang, and G. H. Chen (2004). Factors affecting virus removal in a membrane bioreactor. IWA Specialized Conference on Water Environment Membrane Technology (WEMT 2004), June 7-10 2004, Seoul, Korea.
D H. W Leung, G. H. Chen and K R Sharma (2004). Effect of attached/re-suspended solids from sewer sediment on sewage phase bacterial activity. The 4th IWA Specialized Conference on Sewer Processes and Networks. November 22-24, 2004, Funchal, Portugal.
X. H. Guan, G. H. Chen, and C. Shang (2004). Competitive adsorption of phosphorus on aluminum hydroxide. The 4th World Water Congress, 19-24 September 2004, Marrakech, Morocco.
H L S Tam, D T W Tang, G. H. Chen, C Shang, K M Ho and K R Sharma (2004). A Pilot study on the performance of an membrane bio-reactor in treating fresh water sewage and saline sewage in Hong Kong. The 4th World Water Congress, 19-24 September 2004, Marrakech, Morocco.
X. H. Guan, G. H. Chen, and C. Shang (2004). Spectroscopic investigation of the interaction of pyromellitate with aluminum hydroxide. The 228th American Chemistry Association National Meeting, August, Philadelphia, USA.
H M Wong, C Shang, and G. H. Chen (2004).Membrane bioreactor for wastewater treatment and reuse: virus rejection. European Symposium on Environmental Biotechnology, April, Oostende, Belgium.
H W D Leung, G. H. Chen, T. Ito, S Okabe, and Y. Watanabe (2004). Comparison of community structure of sulfate-reducing bacteria and their roles in carbon mineralization in sewer biofilms growing under aerophilic and microaerophilic conditions. IWA Specialized International Conference on Biofilms 2004, 24-16 October, 2004, Las Vegas, Nevada, USA.
G. N. Lau, K. R. Sharma, G. H. Chen and M. C. M. van Loosdrecht (2005). Integration of sulfate reduction, autotrophic denitrification and nitrification to achieve low-cost excess sludge minimization for Hong Kong sewage. The 3rd IWA Leading-edge Conference on Water and Wastewater Treatment Technologies, 6-8 June 2005, Sapporo, Japan (orally presented at the Workshop on Sludge Management).
A. Lau, D. H. W. Leung, and G. H. Chen (2005). Study of Hydrolysis of Particulate Organics in Gravity Sewer. 1st IWA-ASPIRE Conference, 10-15 July, 2005, Singapore.
G. N. Lau, K. R. Sharma, and G. H. Chen (2005). Autotrophic denitrification utilizing dissolved sulfides produced during anaerobic treatment of sulfate containing wastewater. 1st IWA-ASPIRE Conference, 10-15 July, 2005, Singapore.
H. L. S. Tam, D. T. W. Tang, K R Sharma and G. H. Chen (2005). A pilot study for sewage reclamation and reuse with MBR/RO and MF/RO systems. The 5th International Symposium on Wastewater Reclamation and Reuse Sustainability, 8-11 November, 2005, Korea.
F. Jiang, D. H. W. Leung, S. Y. Li, and G. H. Chen (2006). Use of genetic algorithm as an efficient tool to calibrate ASM3-based sewer process model. The 2nd IWA Specialized International Conference on Sewer Operation and Maintenance (SOM 06), October 24-28, 2006, Vienna, Austria.
Selected Professional Activities
International
Issue Editor of Water Science & Technology (2000)
Issue Editor of Water Science & Technology: Water Supply (2004, 2006)
Associate Editor of Water Research (2005-2009)
Editorial board member of IWA Journal of Water Supply: Research & Technology (AQUA) (2006~)
Task Committee Member of the IWA Sludge Management Specialist Group (2004~)
Management Committee Member of the IWA/IAHR Joint Working Group on Sewer Systems & Process (2004~)
Organizer and Chairman, IWA Sponsored International Symposium on Development of Innovative Water and Wastewater Treatment Technologies for the 21st Century, 8-10 October 1999, Hong Kong.
Organizer and Chairman, IWA Sponsored International Specialized Conference on Creative Water and Wastewater Treatment Technologies for Densely Populated Urban Areas, September 18-20 2002, Hong Kong.
Regional Organizing Committee Member of the 3rd IWA Leading-edge Conference on Water and Wastewater Treatment Technologies, 6-8 June 2005, Sapporo, Japan.
Organizing Committee Member of IWA Chemical Industries 2005, July 14 -16 2005, Tsukuba & Kashima, Japan.
Session Chairman, the 4th Japan-Netherlands Workshop on Integrated Water Quality Management”, October 9-11, 2000, Japan.
Session Chairman, the 1st IWA-ASPIRE conference, July 10-15, 2005, Singapore.
Organizing and Program Committees Member of the 2nd IWA Conference on Sewer Operation and Maintenance (SOM06), 26-28 October, 2006, Austria.
Director of the Croucher Foundation Advanced Study Institute: Leading-edge Strategies and Technologies for Sustainable Urban Water Management, September 16-20, 2006.
Director of the Croucher Foundation Advanced Study Institute: Sustainable Water Resources and Water Quality Management (tentative). 2007/2008.
Director of the Croucher Foundation Advanced Study Institute: New concepts and innovations towards Energy and Resources Reduction and Recovery in Wastewater Treatment (tentative). 2007/2008.
National and Local
Co-organizer, the 1st Forum of China Young Leading Scholars in Environmental Science & Engineering, June 19-22, 2001, Shenzhen.
Organizer of a special tailor-made training course on modelling biotreatment processes for the Drainage Services Department, January 18-20, 2005, Hong Kong.
Organizer of a half-day special seminar on Small Scale Sewage Treatment Technologies for the Drainage Services Department, 1999, Hong Kong.
Organizer of a one-day special workshop on Leading-edge Water and Wastewater Treatment Technologies and Effluent Reuse and Recycling Practices in Japan (with Professor Y. Watanabe) on September 07, 2005, Hong Kong.
Editorial Committee Member of Journal of Environmental Science and Engineering, Tsinghua University, China (2005~).
Editorial Committee Member of Frontiers of Environmental Science & Engineering in China-Selected Publications from Chinese Universities, an English journal published by the China Higher Education Press and distributed by Springer-Verlag publisher (2006~).
Organizer of a one-day special workshop with the IWA Hong Kong Chamber on Regulations, Technologies, and Risk Assessment in Wastewater Reclamation and Reuse, September 18, 2006, Hong Kong (with Professors T. Asano, G. Amy, S. Matsui, J. Rose).
Adjunct Professor of Zhejiang University (2002~).
Independent Director of EcoWater Co. (listed in Singapore) (2004-2006).
Independent Technical Checker to Mitsubishi Rayon Group (2003).
Consultant to the HKSAR Government.
Post-graduate Students Supervision at HKUST
3 PhD and 18 Master students have been graduated under my supervision/co-supervision. Currently supervising 6 Master and 4 PhD students.
Research Grant
Total research money acquired so far from HKRGC, DSD, ECF, HKUST, Croucher Foundation, and industries: ~13 M HK$.

     

     

     

     

    鏈接:陳光浩教授簡(jiǎn)介

     

    陳光浩教授現(xiàn)任香港科技大學(xué)土木與環(huán)境工程系終身教授、環(huán)境工程主任、中組部千人計(jì)劃學(xué)者、香港特區(qū)政府污水處理工程技術(shù)顧問、國(guó)際水協(xié)(IWALET大會(huì)議程會(huì)核心成員、國(guó)際水協(xié)國(guó)際水力學(xué)會(huì)(IAHR)下水道聯(lián)合專家委員會(huì)理事、《Water Research》副主編/專輯主編、《IWA JournalAQUA》亞太區(qū)編委、《Water Science & Technology》專輯主編。

     

    陳光浩教授的研究工作主要集中于可持續(xù)性非集中式城市污水處理新系統(tǒng)、活性污泥法剩余污泥減量方法、污水管道中污染物轉(zhuǎn)化及生物膜 、 MBR處理等領(lǐng)域。迄今已出版學(xué)術(shù)專著或?qū)n}論文集等12冊(cè),發(fā)表SCI論文100多篇。2011年當(dāng)選國(guó)際水協(xié)會(huì)士(IWA Fellow)、2012年以原創(chuàng)SANI工藝獲德國(guó)《Huber 國(guó)際技術(shù)獎(jiǎng)》二等獎(jiǎng)、以城市三水(海水,淡水,中水)系統(tǒng)和SANI工藝獲西班牙巴塞羅那《世界智慧城市項(xiàng)目獎(jiǎng)》決賽獎(jiǎng)及國(guó)際水協(xié)《可持續(xù)水專家組獎(jiǎng)》亞軍獎(jiǎng)、以城市三水、利用海水回收尿磷技術(shù)和SANI工藝統(tǒng)合系統(tǒng)獲國(guó)際水協(xié)《應(yīng)用研究類項(xiàng)目創(chuàng)新獎(jiǎng)》東亞榮譽(yù)獎(jiǎng)和全球榮譽(yù)獎(jiǎng)。

     
     
     
     
     
     

污水處理“殺泥技術(shù)”由千人計(jì)劃陳光浩全球首創(chuàng) 

  來(lái)源:人才廣州

 
 

污水處理“殺泥技術(shù)”由廣州南沙千人計(jì)劃陳光浩全球首創(chuàng)


他是一名“千人計(jì)劃”專家,他是國(guó)際水協(xié)會(huì)杰出會(huì)士,他在全球獨(dú)創(chuàng)了SANI技術(shù)(SANI技術(shù)可有效節(jié)省污水處理過程中三分之一的能耗,還能減少90%產(chǎn)出的污泥),他是陳光浩。

在南沙,有一支由香港科技大學(xué)陳光浩教授帶領(lǐng)的科研團(tuán)隊(duì),在全球污水處理工業(yè)領(lǐng)域獨(dú)創(chuàng)了SANI技術(shù)。目前這項(xiàng)“殺泥”技術(shù)已經(jīng)在香港進(jìn)入了產(chǎn)業(yè)化示范項(xiàng)目階段,今年開始將爭(zhēng)取與南沙區(qū)政府合作,在當(dāng)?shù)亻_展產(chǎn)業(yè)化項(xiàng)目,向全國(guó)推廣這一項(xiàng)技術(shù)。

污水處理“殺泥技術(shù)”由廣州南沙千人計(jì)劃陳光浩全球首創(chuàng)污水處理“殺泥技術(shù)”由廣州南沙千人計(jì)劃陳光浩全球首創(chuàng)

 

在港日均處理千噸污水

2008年至2010年:在香港東涌泵站處理實(shí)際含鹽污水的中試階段,陳光浩團(tuán)隊(duì)進(jìn)行了連續(xù)穩(wěn)定運(yùn)行225天的現(xiàn)場(chǎng)中試。SANI工藝的污泥產(chǎn)率僅為0.64千克/日,實(shí)現(xiàn)了污泥減量90%。與傳統(tǒng)活性污泥法工藝-污泥消化處理聯(lián)用相比,SANI工藝可以節(jié)省能耗35%,減少溫室氣體排放36%。

2013年:“殺泥技術(shù)”獲得了香港渠務(wù)局和創(chuàng)新及科技基金等合資近2460萬(wàn)元港幣,開展了大型示范試驗(yàn),每天平均處理高達(dá)一千噸污水,有效減少污泥產(chǎn)量達(dá)70%。另外,示范廠采用高效混凝-沉淀技術(shù)對(duì)生物處理單元進(jìn)行后續(xù)處理,同時(shí)可實(shí)現(xiàn)污水中75%的總磷去除,所需體積僅為傳統(tǒng)沉淀池的30%。

2014年:“殺泥技術(shù)”成為香港特區(qū)政府、香港科技大學(xué)大力推動(dòng)的技術(shù)成果轉(zhuǎn)化項(xiàng)目。

近年來(lái),除了在香港,“殺泥技術(shù)”還取得了古巴、泰國(guó)、阿聯(lián)酋等地的支持,在當(dāng)?shù)亻_展實(shí)驗(yàn),獲得了德國(guó)“國(guó)際海柏技術(shù)獎(jiǎng)”、西班牙“世界智慧城市項(xiàng)目決賽獎(jiǎng)”,及國(guó)際水協(xié)的多個(gè)獎(jiǎng)項(xiàng)。

每周爭(zhēng)取在南沙工作1日

今年,陳光浩將會(huì)把更多時(shí)間分給南沙團(tuán)隊(duì)。“爭(zhēng)取每周來(lái)南沙工作至少1天。”目前,南沙團(tuán)隊(duì)的核心成員有8名,陳光浩將爭(zhēng)取在3到5年內(nèi),把隊(duì)伍擴(kuò)大至30人以上,在這里完成內(nèi)地版本的調(diào)試。

陳光浩科研團(tuán)隊(duì)選擇在南沙完成

內(nèi)地版本調(diào)試的理由

政策優(yōu)勢(shì):“南沙距離香港很近,對(duì)珠三角有很強(qiáng)的輻射作用,再加上國(guó)家近期不斷賦予的政策優(yōu)勢(shì)。這里是我們理想的司令部。我們?cè)谙愀蹌?chuàng)新技術(shù),在南沙完善技術(shù),搭乘‘一帶一路’的軌跡推向世界。”

陳光浩計(jì)劃,下一步,他希望這支團(tuán)隊(duì)能在南沙注冊(cè)公司,成立一個(gè)產(chǎn)學(xué)研官四者互動(dòng)的平臺(tái),爭(zhēng)取在2018年實(shí)現(xiàn)正式投產(chǎn)。

地理優(yōu)勢(shì):由于“殺泥技術(shù)”目前必須和海水資源結(jié)合使用,因此內(nèi)地沿海缺水地區(qū)成為第一片藍(lán)海市場(chǎng)。“上海、大連、廈門、青島……這16座沿海城市總?cè)丝谶_(dá)9200萬(wàn)人。以每人每天產(chǎn)生250升污水,及以傳統(tǒng)的活性污泥工藝平均每處理一頓污水產(chǎn)生235克干污泥量計(jì)算,每年共產(chǎn)約200萬(wàn)噸的干污泥。若SANI工藝應(yīng)用于這些城市的話,可以大幅度的降低這些污泥的處理過程,同時(shí)每年可以減少120萬(wàn)噸的二氧化碳排放。” 
 

Faculty
Guang-Hao CHEN (陳光浩) DEng , Kyoto University

Chair Professor


Homepage: http://ceghchen.people.ust.hk
RESEARCH INTERESTS:

Novel biological wastewater treatment; new waste resource recovery; digitization of wastewater/sludge treatment; sewer network modelling and application; scale up engineering study.  

RESEARCH PROJECTS:

  • Sustainable Sulfur conversion wastewater treatment processes – Woody Wu, Tianwei Hao, and Guang-Hao CHEN

  • SANI process optimization, demonstration, and application –Demonstration - Woody Wu, Allen Leung, YW Ha, Bo Wang, and Guang-Hao CHEN

  • Sludge odor control and new resource recovery – Tianwei Hao and Guang-Hao CHEN

  • Scale-up of self-forming dynamic membrane bioreactor (SFMBR)– Dai Ji and Guang-Hao CHEN

  • Total Municipal Organic Waste Management by integrating Food Waste Disposal And Sewage Treatment (MOW-FAST) - Guang-Hao CHEN, T Zhang (HKU), J. Wang (HKBU), and G. Ekama (UCT)

SELECTED PUBLICATIONS:
  • L. Chen, T.-H. Tsui, G. A. Ekama, H. R. Mackey, T. W. Hao, and G. H. Chen. (2018). Development of biochemical sulfide potential (BSP) test for sulfidogenic biotechnology application. Water Research, 135, pp.231-240.

  • D. Guan, J. Dai, Y. Watanabe and G. H. Chen (2018).  The Change of Physical Properties of Dynamic Layer and Its Correlation with Permeate Quality in Self-forming Dynamic Membrane Bio-reactor.  Water Research, 140, 67-76.

  • Li, X., Luo, J., Guo, G., Mackey, H. R., Hao, T., & Chen, G. H. (2017). Seawater-based wastewater accelerates development of aerobic granular sludge: a laboratory proof-of-concept. Water Research, 115, 210-219.

  • Y. Y. Wei, J. Dai, H. R. Mcaky, and G. H. Chen (2017).  The feasibility study of autotrophic denitrification with solid iron sludge produced for sulfide control. Water Research,  122, pp.226-233.

  • Wu, D., Ekama, G. A., Chui, H. K., Wang, B., Cui, Y. X., Hao, T. W. & Chen, G. H. (2016). Large-scale demonstration of the sulfate reduction autotrophic denitrification nitrification integrated (SANI®) process in saline sewage treatment. Water Research, 100, 496-507.

  • Tsui, T. W. Hao, and G. H. Chen (2016). A super high-rate sulfedogenic system for saline wastewater treatment.  Water Research, 104, pp.147-155. 

  • Hao, T., Luo, J., Wei, L., Mackey, H. R., Liu, R., Morito, G. R., & Chen, G. H. (2015). Physicochemical and biological characterization of long-term operated sulfate reducing granular sludge in the SANI® process. Water Research, 71, 74-84.

  • Hao, T. W., Xiang, P. Y., Mackey, H. R., Chi, K., Lu, H., Chui, H. K., & Chen, G. H. (2014). A review of biological sulfate conversions in wastewater treatment. Water Research, 65, 1-21.

  • W. T. Tang, J. Dai, R. L. Liu, and G. H. Chen (2015). Microbial ureolysis in SUPR: kinetic study and reactor verification. Water Research, 87, pp.10-19.

  • Luo, J., Hao, T., Wei, L., Mackey, H. R., Lin, Z., & Chen, G. H. (2014). Impact of influent COD/N ratio on disintegration of aerobic granular sludge. Water Research, 62, 127-135.

  • Wu, D., Ekama, G. A., Wang, H. G., Wei, L., Lu, H., Chui, H. K., & Chen, G. H. (2014). Simultaneous nitrogen and phosphorus removal in the sulfur cycle-associated Enhanced Biological Phosphorus Removal (EBPR) process. Water Research, 49, 251-264.

  • H. Lu, D. Wu, F. Jiang, G. A. Ekama, M. C. M., van Loosdrecht and G. H Chen (2012). The demonstration of a novel sulfur cycle-based wastewater treatment process: Sulfate reduction, autotrophic denitrification, and nitrification integrated (SANI®) biological nitrogen removal process. Biotechnology & Bioengineering, 109, pp.2778-2789.

  • T. W. Hao, L. Wei, H. Lu, H. K. Chui, H. R. Mackey, M. C. M van Loosdrecht, and G. H. Chen (2013). Characterization of sulfate reducing granular sludge in the SANI process.  Water Research, 47(19), pp.7042-7052. 

  • D. Wu, G. Ekama, H. Lu, H. K. Chui, W. T. Liu, D. Brdjonovic, M. C. M. van Loosdrecht and G. H. Chen (2013). A new biological phosprorus removal process in association of sulfur cycle. Water Research, 47(9), pp.3057-3069.

  • Lu H., Ekama G. A, Wu D., van Loosdrecht M. C. M. and G. H. Chen (2012). SANI process realizes sustainable saline sewage treatment for saline water supply: steady-state model-based evaluation of pilot scale trial of the process. Water Research, 46(2), pp.475-490.

  • H. Lu, D. Wu, F. Jiang, G. A. Ekama, M. C. M., van Loosdrecht and G. H Chen (2012). The demonstration of a novel sulfur cycle-based wastewater treatment process: Sulfate reduction, autotrophic denitrification, and nitrification integrated (SANI®) biological nitrogen removal process. Biotechnology & Bioengineering, 109, pp.2778-2789.

  • R. W. K. Leung, D. C. H. Li, W. K. Yu, H. K. Chui, T. O. Lee, M. C. M. van Loosdrecht and G. H. Chen (2011).. Integration of seawater and grey water reuse to maximize alternative water resource for coastal Areas: The Case of the Hong Kong International Airport. Water Science & Technology, 65(3), pp.410-417.

  • Wang, J., Lu, H., Chen, G. H., Lau, G. N., Tsang, W. L., & van Loosdrecht, M. C. (2009). A novel sulfate reduction, autotrophic denitrification, nitrification integrated (SANI) process for saline wastewater treatment. Water Research, 43(9), 2363-2372.

  • F. Jiang, D. H. W. Leung, S. Y. Li, G. H. Chen,  S. Okabe and M. C. M. van Loosdrecht (2009). A biofilm model for prediction of pollutant transformation in sewers.  Water Research, 43(13), pp.3187-3198. 

  • H. L. S. Tam, D. T. W. Tang, K R Sharma and G. H. Chen (2006). A pilot study for wastewater reclamation and reuse with MBR/RO and MF/RO systems. Desalination. 202 (1-3), pp.106-113 (IF=3.756).

  • Saby, S., Djafer, M., & Chen, G. H. (2003). Effect of low ORP in anoxic sludge zone on excess sludge production in oxic-settling-anoxic activated sludge process. Water Research, 37(1), 11-20.

  • Chen, G. H., Wong, M. T., Okabe, S., & Watanabe, Y. (2003). Dynamic response of nitrifying activated sludge batch culture to increased chloride concentration. Water Research, 37(13), 3125-3135.

  • Chen, G. H., An, K. J., Saby, S., Brois, E., & Djafer, M. (2003). Possible cause of excess sludge reduction in an oxic-settling-anaerobic activated sludge process (OSA process). Water Research, 37(16), 3855-3866.

  • Chen, G. H., Mo, H. K., & Liu, Y. (2002). Utilization of a metabolic uncoupler, 3, 3, 4, 5-tetrachlorosalicylanilide (TCS) to reduce sludge growth in activated sludge culture. Water Research, 36(8), 2077-2083.

  • Saby, S., Djafer, M., & Chen, G. H. (2002). Feasibility of using a chlorination step to reduce excess sludge in activated sludge process. Water Research, 36(3), 656-666.

來(lái)源 :http://www.ce.ust.hk/Web/FacultyStaffDetail.aspx?FacultyStaffId=30&Type=Faculty
 
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